Journal
MATERIALS ADVANCES
Volume 2, Issue 1, Pages 236-240Publisher
ROYAL SOC CHEMISTRY
DOI: 10.1039/d0ma00701c
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Funding
- Guangdong Province Zhu Jiang Talents Plan [2016ZT06C090]
- Guangzhou City Talents Plan [CYLJTD-201609]
- Nansha District Research Project [2016GJ011]
- Hong Kong Baptist University
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A uniform nickel film was coated on crown ether-modified carbon nanotubes (c-CNTs) by electroless deposition, forming CNT@Ni@(NiOH)(2) and c-CNT@Ni@(NiOH)(2) discs after oxidation and compression. The capacitances of the films were compared, with c-CNT@Ni@(NiOH)(2) demonstrating lower resistance.
A uniform nickel film could be coated on crown ether-modified carbon nanotubes (c-CNTs) by electroless deposition. The products CNT@Ni and c-CNT@Ni were oxidized and compressed into CNT@Ni@(NiOH)(2) and c-CNT@Ni@(NiOH)(2) discs, respectively. The areal and volumetric capacitances of CNT@Ni@(NiOH)(2) and c-CNT@Ni@(NiOH)(2) were compared and c-CNT@Ni@(NiOH)(2) showed a lower resistance.
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